A weak gel network keeps carbon nanotube dispersions stable in storage while shear-thinning flow lowers viscosity for electrode slurry processing.
A two-polymer gel matrix raises electrolyte content while preserving manufacturability and cell lifetime in lithium-ion electrodes.
Automated calculation of electrode tab positions improves welding accuracy and reduces skill-dependent defects in rechargeable battery production.
A porous silicon-nanographite aerogel with carbon-coated nanoparticles absorbs lithiation swelling while preserving conductivity and cycle life.
A weak gel CNT dispersion stays stable in storage yet shear-thins during processing, supporting lithium-ion electrode slurry coating.
Finer zinc particles and a unitary cup-bottom separator improve low-zinc alkaline cell contact, reduce gassing, and sustain discharge reliability.
Gelled electrodes trap liquid electrolyte in bipolar accumulators to prevent leakage and ionic short-circuits without added seals.
A semi-solid cathode thicker than the anode raises active material loading, cuts inactive components, and simplifies high-energy battery manufacturing.